Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications

Horizontally assembled trapezoidal piezoelectric cantilevers driven by magnetic coupling were fabricated for rotational energy harvester applications. A dodecagonal rigid frame with an attached array of six trapezoidal cantilevers served as a stator for electrical power generation. A rotor disk with...

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Main Authors: Yonghyeon Na, Min-Seon Lee, Jung Woo Lee, Young Hun Jeong
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/2/498
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spelling doaj-199f906bc4be4036bcbb9af09d9fbffa2021-01-19T00:05:31ZengMDPI AGEnergies1996-10732021-01-011449849810.3390/en14020498Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester ApplicationsYonghyeon Na0Min-Seon Lee1Jung Woo Lee2Young Hun Jeong3Optic & Electronic Materials & Component Center, Korea Institute of Ceramic Engineering and Technology, Jinju 52851, KoreaOptic & Electronic Materials & Component Center, Korea Institute of Ceramic Engineering and Technology, Jinju 52851, KoreaDepartment of Materials Science and Engineering, Pusan National University, Busan 46241, KoreaOptic & Electronic Materials & Component Center, Korea Institute of Ceramic Engineering and Technology, Jinju 52851, KoreaHorizontally assembled trapezoidal piezoelectric cantilevers driven by magnetic coupling were fabricated for rotational energy harvester applications. A dodecagonal rigid frame with an attached array of six trapezoidal cantilevers served as a stator for electrical power generation. A rotor disk with six permanent magnets (PMs) interacted magnetically with the counterpart cantilever’s tip-mass PMs of the stator by rotational motion. Each trapezoidal piezoelectric cantilever beam was designed to operate in a transverse mode that utilizes a planar Ag/Pd electrode printed onto lead zirconate titanate (PZT) piezoelectric thick film. The optimized distance between a pair of PMs of the rotor and the stator was evaluated as approximately 10 mm along the same vertical direction to make the piezoelectric cantilever beam most deflectable without the occurrence of cracks. The theoretically calculated resistance torque was maximized at 46 mN·m for the optimized trapezoidal piezoelectric cantilever. The proposed energy harvester was also demonstrated for wind energy harvester applications. Its harvested output power reached a maximum of approximately 22 mW at a wind speed of 10 m/s under a resistive load of 30 kΩ. The output performance of the proposed energy harvester makes it possible to power numerous low-power applications such as smart sensor systems.https://www.mdpi.com/1996-1073/14/2/498trapezoidal cantilevermagnetic couplingpiezoelectric bimorphmagneto-piezo-elasticenergy harvesting
collection DOAJ
language English
format Article
sources DOAJ
author Yonghyeon Na
Min-Seon Lee
Jung Woo Lee
Young Hun Jeong
spellingShingle Yonghyeon Na
Min-Seon Lee
Jung Woo Lee
Young Hun Jeong
Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
Energies
trapezoidal cantilever
magnetic coupling
piezoelectric bimorph
magneto-piezo-elastic
energy harvesting
author_facet Yonghyeon Na
Min-Seon Lee
Jung Woo Lee
Young Hun Jeong
author_sort Yonghyeon Na
title Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
title_short Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
title_full Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
title_fullStr Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
title_full_unstemmed Horizontally Assembled Trapezoidal Piezoelectric Cantilevers Driven by Magnetic Coupling for Rotational Energy Harvester Applications
title_sort horizontally assembled trapezoidal piezoelectric cantilevers driven by magnetic coupling for rotational energy harvester applications
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-01-01
description Horizontally assembled trapezoidal piezoelectric cantilevers driven by magnetic coupling were fabricated for rotational energy harvester applications. A dodecagonal rigid frame with an attached array of six trapezoidal cantilevers served as a stator for electrical power generation. A rotor disk with six permanent magnets (PMs) interacted magnetically with the counterpart cantilever’s tip-mass PMs of the stator by rotational motion. Each trapezoidal piezoelectric cantilever beam was designed to operate in a transverse mode that utilizes a planar Ag/Pd electrode printed onto lead zirconate titanate (PZT) piezoelectric thick film. The optimized distance between a pair of PMs of the rotor and the stator was evaluated as approximately 10 mm along the same vertical direction to make the piezoelectric cantilever beam most deflectable without the occurrence of cracks. The theoretically calculated resistance torque was maximized at 46 mN·m for the optimized trapezoidal piezoelectric cantilever. The proposed energy harvester was also demonstrated for wind energy harvester applications. Its harvested output power reached a maximum of approximately 22 mW at a wind speed of 10 m/s under a resistive load of 30 kΩ. The output performance of the proposed energy harvester makes it possible to power numerous low-power applications such as smart sensor systems.
topic trapezoidal cantilever
magnetic coupling
piezoelectric bimorph
magneto-piezo-elastic
energy harvesting
url https://www.mdpi.com/1996-1073/14/2/498
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